Ngā hua rapu - Rika Kitazume-Taneike
- E whakaatu ana i te 1 - 3 hua o te 3
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1
Ablation of Toll-like receptor 9 attenuates myocardial ischemia/reperfusion injury in mice mā Rika Kitazume-Taneike, Manabu Taneike, Shigemiki Omiya, Tomofumi Misaka, Kazuhiko Nishida, Osamu Yamaguchi, Shizuo Akira, Michael J. Shattock, Yasushi Sakata, Kinya Otsu
I whakaputaina 2019Artigo -
2
mTOR Hyperactivation by Ablation of Tuberous Sclerosis Complex 2 in the Mouse Heart Induces Cardiac Dysfunction with the Increased Number of Small Mitochondria Mediated through the... mā Manabu Taneike, Kazuhiko Nishida, Shigemiki Omiya, Elham Zarrinpashneh, Tomofumi Misaka, Rika Kitazume-Taneike, Ruth Austin, Minoru Takaoka, Osamu Yamaguchi, Michael J. Gambello, Ajay M. Shah, Kinya Otsu
I whakaputaina 2016Artigo -
3
Glycoproteomics Reveals Decorin Peptides With Anti-Myostatin Activity in Human Atrial Fibrillation mā Javier Barallobre‐Barreiro, Shashi Kumar Gupta, Anna Zoccarato, Rika Kitazume-Taneike, Marika Fava, Xiaoke Yin, Tessa Werner, Marc N. Hirt, Anna Zampetaki, Alessandro Viviano, Mei Chong, Marshall Bern, Antonios Kourliouros, Nieves Doménech, Peter Willeit, Ajay M. Shah, Marjan Jahangiri, Liliana Schaefer, Jens W. Fischer, Renato V. Iozzo, Rosa Viner, Thomas Thum, Joerg Heineke, Antoine Kichler, Kinya Otsu, Manuel Mayr
I whakaputaina 2016Artigo
Ngā utauta rapu:
Ngā marau whai pānga
Biochemistry
Biology
Internal medicine
Medicine
Cell biology
Apoptosis
Atrial fibrillation
Autophagy
Biglycan
Cardiac fibrosis
Cardiology
DNA methylation
Decorin
Endocrinology
Extracellular matrix
Gene
Gene expression
Glycoprotein
Glycosylation
Heart failure
Inflammation
Ischemia
Mechanistic target of rapamycin
Mitochondrion
Myocardial ischemia
PI3K/AKT/mTOR pathway
Pathology
Pharmacology
Proteoglycan
Receptor